October 13, 2016
Journal Article

Mesoscale Polymer Dissolution probed by Raman Spectroscopy and Molecular Simulations

Abstract

The diffusion of various solvents into a polystyrene (PS) matrix was probed experimentally by monitoring the temporal profiles of the Raman spectra and theoretically from molecular dynamics (MD) simulations of the binary system. The simulation results assist in providing a fundamental, molecular level connection between the mixing/dissolution processes and the difference = solvent – PS in the values of the Hildebrand parameter () between the two components of the binary systems: solvents having similar values of with PS (small ) exhibit fast diffusion into the polymer matrix, whereas the diffusion slows down considerably when the ’s are different (large ). To this end, the Hildebrand parameter was identified as a useful descriptor that governs the process of mixing in polymer – solvent binary systems. The experiments also provide insight into further refinements of the models specific to non-Fickian diffusion phenomena that need to be used in the simulations.

Revised: January 18, 2017 | Published: October 13, 2016

Citation

Chang T., S.S. Xantheas, and A. Vasdekis. 2016. Mesoscale Polymer Dissolution probed by Raman Spectroscopy and Molecular Simulations. Journal of Physical Chemistry B 120, no. 40:110581-10587. PNNL-SA-118505. doi:10.1021/acs.jpcb.6b05565